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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Effect of thermal, acid, alkaline and alkaline-peroxide pretreatments on the biochemical methane potential and kinetics of the anaerobic digestion of wheat straw and sugarcane bagasse
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Effect of thermal, acid, alkaline and alkaline-peroxide pretreatments on the biochemical methane potential and kinetics of the anaerobic digestion of wheat straw and sugarcane bagasse

机译:热,酸,碱和碱过氧化物预处理对麦秸和甘蔗渣厌氧消化的生化甲烷势和动力学的影响

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摘要

The effect of thermal, acid, alkaline and alkaline-peroxide pretreatments on the methane produced by the anaerobic digestion of wheat straw (WS) and sugarcane bagasse (SCB) was studied, using whole slurry and solid fraction. All the pretreatments released formic and acetic acids and phenolic compounds, while 5-hydroxymetilfurfural (HMF) and furfural were generated only by acid pretreatment. A remarkable inhibition was found in most of the whole slurry experiments, except in thermal pretreatment which improved methane production compared to the raw materials (29% for WS and 11% for SCB). The alkaline pretreatment increased biodegradability (around 30%) and methane production rate of the solid fraction of both pretreated substrates. Methane production results were fitted using first order or modified Gompertz equations, or a novel model combining both equations. The model parameters provided information about substrate availability, controlling step and inhibitory effect of compounds generated by each pretreatment. (C) 2015 Elsevier Ltd. All rights reserved.
机译:研究了采用全浆液和固体馏分对麦秸(WS)和甘蔗渣(SCB)进行厌氧消化后,热,酸,碱和碱过氧化物预处理对甲烷产生的影响。所有预处理均释放出甲酸,乙酸和酚类化合物,而5-羟甲基糠醛(HMF)和糠醛仅通过酸预处理即可生成。在大多数整个浆料实验中都发现了显着的抑制作用,除了在热预处理方面,与原料相比,甲烷的产量提高了(WS为29%,SCB为11%)。碱性预处理提高了两种预处理底物的固体部分的生物降解性(约30%)和甲烷生成率。使用一阶或改进的Gompertz方程或结合两个方程的新型模型拟合甲烷生产结果。模型参数提供了有关底物可用性,控制步骤和每种预处理生成的化合物的抑制作用的信息。 (C)2015 Elsevier Ltd.保留所有权利。

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